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Electron-positron pair production in ultrarelativistic heavy ion collisions

机译:超相对论重离子碰撞中电子-正电子对的产生

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摘要

In recent years, a large number of papers have appeared that dealt with e(+)e(-) pair production in heavy ion collisions at high energies. To a large extent these studies were motivated by the existence of relativistic heavy ion accelerators all over the world. There pair production can be studied in so called "ultra-peripheral collisions", where the ions do not come close enough to interact strongly with each other. Various different methods have been used and it is the purpose of this review to present a unified picture of the present status of the field. The lowest order Born result has been known for more than seven decades. The interest and focus is now on higher order effects for values of Z alpha less than or similar to 1, where Z is the charge number of the ion. A similar problem appears for the Bethe-Heitler process, the production of e(+)e(-) pairs in photon-nucleus collisions. It was solved essentially some five decades ago by Bethe and Maximon. The result of Bethe and Maximon can also be recovered by summing over a class of Feynman diagrams to infinite order. These results can be used for a study of Coulomb corrections in nucleus-nucleus collisions. Indeed, the major part of these corrections have a structure closely related to the Bethe-Maximon solution. There are additional terms which give a small contribution to the total cross section at high energies. Their importance can be enhanced by concentrating on small impact parameters. An interesting exact solution of the one-particle Dirac equation in the high-energy limit was found independently by several authors. This led to some discussion about the interpretation of these results within quantum electrodynamics (QED) and the correct regularization necessary to get the correct result. The dust of previous debates has settled and, indeed, a consistent picture has emerged. Another interesting higher order effect is multiple pair production, which we also discuss. We compare experimental results obtained recently at relativistic heavy ion collider (RHIC) for free and bound-free pair production with theoretical results. We also make some more remarks on the physics of strong electric fields of longer duration. A new field is opened up by ultra-intense laser pulses. We argue that due to the short interaction time in ultraperipheral heavy ion collisions pair production can be well understood in the frame of QED perturbation theory. (c) 2007 Elsevier B.V All rights reserved.
机译:近年来,出现了许多论文,涉及高能下重离子碰撞中的e(+)e(-)对产生。这些研究很大程度上是由于相对论重离子加速器在世界范围内的存在。可以在所谓的“超周边碰撞”中研究离子对的产生,其中离子离得不够近,无法彼此强烈相互作用。已经使用了各种不同的方法,并且本综述的目的是呈现该领域的当前状态的统一图景。最低的Born结果已被人们知道超过七十年。现在,人们关注和关注的是Z小于或等于1的Z alpha值的高阶效应,其中Z是离子的电荷数。对于Bethe-Heitler过程,在光子-核碰撞中产生e(+)e(-)对也出现了类似的问题。大约在五十年前,Bethe和Maximon解决了这个问题。 Bethe和Maximon的结果也可以通过将一类Feynman图求和为无穷大来恢复。这些结果可用于研究核-核碰撞中的库仑校正。实际上,这些校正的主要部分都具有与Bethe-Maximon解决方案密切相关的结构。在高能量下,还有一些附加项对总横截面的贡献很小。通过集中于小的冲击参数可以提高其重要性。多位作者独立地发现了一个高能量极限中单粒子Dirac方程的有趣精确解。这引起了有关在量子电动力学(QED)中解释这些结果以及获得正确结果所必需的正确正则化的一些讨论。以往辩论的尘埃落定,确实出现了一致的情况。另一个有趣的高阶效应是多对产生,我们还将对此进行讨论。我们比较了相对论重离子对撞机(RHIC)最近获得的自由和无键对生产的实验结果与理论结果。我们还将对持续时间较长的强电场的物理特性做更多说明。超强激光脉冲开辟了一个新领域。我们认为,由于在超外围重离子碰撞中相互作用时间短,因此在QED扰动理论的框架中可以很好地理解对的产生。 (c)2007 Elsevier B.V保留所有权利。

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